首页> 外文OA文献 >Enzymes for Pancreatic Islet Isolation Impact Chemokine-Production and Polarization of Insulin-Producing beta-Cells with Reduced Functional Survival of Immunoisolated Rat Islet-Allografts as a Consequence
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Enzymes for Pancreatic Islet Isolation Impact Chemokine-Production and Polarization of Insulin-Producing beta-Cells with Reduced Functional Survival of Immunoisolated Rat Islet-Allografts as a Consequence

机译:胰岛分离酶影响趋化因子的产生和胰岛素生产β细胞的极化,降低了免疫隔离大鼠胰岛同种异体移植的功能存活率。

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摘要

The primary aim of this study was to determine whether normal variations in enzyme-activities of collagenases applied for rat-islet isolation impact longevity of encapsulated islet grafts. Also we studied the functional and immunological properties of rat islets isolated with different enzyme preparations to determine whether this impacts these parameters. Rat-islets were isolated from the pancreas with two different collagenases with commonly accepted collagenase, neutral protease, and clostripain activities. Islets had a similar and acceptable glucose-induced insulin-release profile but a profound statistical significant difference in production of the chemokines IP-10 and Gro-alpha. The islets were studied with nanotomy which is an EM-based technology for unbiased study of ultrastructural features of islets such as cell-cell contacts, endocrine-cell condition, ER stress, mitochondrial conditions, and cell polarization. The islet-batch with higher chemokine-production had a lower amount of polarized insulin-producing beta-cells. All islets had more intercellular spaces and less interconnected areas with tight cell-cell junctions when compared to islets in the pancreas. Islet-graft function was studied by implanting encapsulated and free islet grafts in rat recipients. Alginate-based encapsulated grafts isolated with the enzymelot inducing higher chemokine production and lower polarization survived for a two-fold shorter period of time. The lower survival-time of the encapsulated grafts was correlated with a higher influx of inflammatory cells at 7 days after implantation. Islets from the same two batches transplanted as free unencapsulated-graft, did not show any difference in survival or function in vivo. Lack of insight in factors contributing to the current lab-to-lab variation in longevity of encapsulated islet-grafts is considered to be a threat for clinical application. Our data suggest that seemingly minor variations in activity of enzymes applied for islet-isolation might contribute to longevity-variations of immunoisolated isletgrafts.
机译:这项研究的主要目的是确定用于大鼠-胰岛分离的胶原酶的酶活性的正常变化是否会影响胶囊化胰岛移植物的寿命。我们还研究了用不同酶制剂分离的大鼠胰岛的功能和免疫学性质,以确定其是否影响这些参数。用两种具有普遍接受的胶原酶,中性蛋白酶和梭菌蛋白酶活性的不同胶原酶从胰腺中分离大鼠胰岛。胰岛具有相似且可接受的葡萄糖诱导的胰岛素释放曲线,但在趋化因子IP-10和Gro-alpha的产生中有深刻的统计学显着差异。用基于纳米技术的胰岛切开术研究胰岛,这是一种基于EM的技术,可以无偏地研究胰岛的超微结构特征,例如细胞间接触,内分泌细胞状况,内质网应激,线粒体状况和细胞极化。具有较高趋化因子产生的胰岛批次具有较少量的极化的胰岛素产生β细胞。与胰岛中的胰岛相比,所有胰岛具有更多的细胞间空间和较少的相互连接的区域,具有紧密的细胞间连接。通过在大鼠受体中植入包囊的和游离的胰岛移植物来研究胰岛移植物的功能。用酶液分离的基于藻酸盐的封装移植物可诱导较高的趋化因子产生和较低的极化,存活时间缩短了两倍。植入后7天,封装的移植物的较低存活时间与较高的炎性细胞流入相关。来自相同两批的胰岛作为游离的未包囊移植物进行移植,在体内的存活率或功能没有任何差异。对导致当前实验室间封装的胰岛移植物寿命变化的因素缺乏了解被认为是临床应用的威胁。我们的数据表明,用于胰岛分离的酶活性的细微变化可能有助于免疫分离的胰岛移植物的寿命变化。

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